Search results for "Mark–Houwink equation"

showing 2 items of 2 documents

Mark-Houwink Parameters of Biosynthetic Poly(γ-glutamic acid) in Aqueous Solution

2001

A combined viscosity–light scattering–gel permeation chromatography (GPC) study was carried out on bacterially produced poly(γ-glutamic acid) (PGGA). PGGA samples with weight-average molecular weights ranging from 8×104 up to 8×105 g·mol–1 dissolved in phosphate buffer at 0.13 M ionic strength were used. It was found that the Mark–Houwink relation is acceptably obeyed, giving K and a values of 1.84×10–6 dL·g–1 and 1.16, respectively. As expected, GPC analysis showed that PGGA does not follow the universal calibration plot and that deviations can not be avoided by modifying the ionic strength.

Aqueous solutionChromatographyPolymers and PlasticsMolecular massChemistryCalibration curveOrganic ChemistryMark–Houwink equationGlutamic acidPermeationCondensed Matter PhysicsIonic strengthMaterials ChemistryA valuePhysical and Theoretical ChemistryMacromolecular Chemistry and Physics
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Continuous polymer fractionation of poly(methyl vinyl ether) and a new Kuhn-Mark-Houwink relation

1995

Continuous polymer fractionation (CPF) — a new large-scale method — was applied to the technical poly(methyl vinyl ether) (PVME) using toluence as solvent and petroleum ether as non-solvent. Two different devices served as fractionation apparatus, namely a column packed with glass beads and a set of mixer-settler extractors. Advantages and draw-backs of these devices are discussed. The experiments yielded numerous PVME fractions, varying in molar mass from 22 to 87 kg/mol and in molecular non-uniformity U = (M¯w/Mn) – 1 from 0,25 to 0,41 according to gel-permeation chromatography as compared with ca. U = 1,30 for the starting material. The following Kuhn-Mark-Houwink relation was establishe…

Molar massPolymers and PlasticsIntrinsic viscosityOrganic ChemistryMark–Houwink equationFractionationMethyl vinyl etherCondensed Matter PhysicsSolventchemistry.chemical_compoundchemistryPolymer chemistryMaterials ChemistryPetroleum etherPhysical and Theoretical ChemistryPolymer fractionationMacromolecular Chemistry and Physics
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